Generation and Characterization of a Sexual Tetraploid Genotype of Seashore Paspalum (Paspalum vaginatum) for Novel Breeding Strategies

Breeding Paspalum vaginatum has been limited to the diploid germplasm; however there is a rich diversity in closely related species that may be utilized. The species is diploid and outcrossing due to self-incompatibility. This research aimed to generate a chromosome-doubled tetraploid and evaluate the effects of chromosome doubling on phenotype and reproductive mode. Both seeds and seedlings from a diploid population were treated with 0.2% colchicine for either 24 or 48 h. Morphological, anatomical, and reproductive traits were evaluated in both cytotypes. Megasporogenesis and megagametogenesis were assessed using complementary histological and optical approaches, and seed set was evaluated under self- and open-pollination. A tetraploid genotype was successfully generated from seedlings treated with colchicine for 24 h with an efficiency of 0.2%. The size of tillers, leaves, inflorescences, stomata, and pollen grains increased in the tetraploid, which also exhibited darker green coloration and greater vigor. Embryo sac development was similar in both cytotypes, indicating that the induced tetraploid remained sexual. No seed set was observed under self-pollination, whereas limited seed set under open-pollination confirmed that the tetraploid is an outcrosser. This new tetraploid provides a valuable bridge parent for introgressing genetic variation from cross-compatible polyploid Paspalum species through interspecific hybridization and the manipulation of apomixis.

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Journal
Plants
Published
2026-09-09
DOI
https://doi.org/10.3390/plants15182758
Primary Topic
Plant Taxonomy and Phylogenetics
Type
article
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article

Generation and Characterization of a Sexual Tetraploid Genotype of Seashore Paspalum (Paspalum vaginatum) for Novel Breeding Strategies

Patricia E. Novo, Carlos A. Acuña, Florencia Galdeano, Ana María González et al.
Plants
Plant Taxonomy and Phylogenetics
article

Generation and Characterization of a Sexual Tetraploid Genotype of Seashore Paspalum (Paspalum vaginatum) for Novel Breeding Strategies

Patricia E. Novo, Carlos A. Acuña, Florencia Galdeano, Ana María González, Norma Estefanía Gómez, Matías Oscar Espindola
article en

Abstract

Breeding Paspalum vaginatum has been limited to the diploid germplasm; however there is a rich diversity in closely related species that may be utilized. The species is diploid and outcrossing due to self-incompatibility. This research aimed to generate a chromosome-doubled tetraploid and evaluate the effects of chromosome doubling on phenotype and reproductive mode. Both seeds and seedlings from a diploid population were treated with 0.2% colchicine for either 24 or 48 h. Morphological, anatomical, and reproductive traits were evaluated in both cytotypes. Megasporogenesis and megagametogenesis were assessed using complementary histological and optical approaches, and seed set was evaluated under self- and open-pollination. A tetraploid genotype was successfully generated from seedlings treated with colchicine for 24 h with an efficiency of 0.2%. The size of tillers, leaves, inflorescences, stomata, and pollen grains increased in the tetraploid, which also exhibited darker green coloration and greater vigor. Embryo sac development was similar in both cytotypes, indicating that the induced tetraploid remained sexual. No seed set was observed under self-pollination, whereas limited seed set under open-pollination confirmed that the tetraploid is an outcrosser. This new tetraploid provides a valuable bridge parent for introgressing genetic variation from cross-compatible polyploid Paspalum species through interspecific hybridization and the manipulation of apomixis.

PlantsVol. 15(18)
National University of the Northeast (AR), Centro Científico Tecnológico - Nordeste (AR)
Life below water
Openalex Percentile: Top 7%
Plant Taxonomy and Phylogenetics
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Generation and Characterization of a Sexual Tetraploid Genotype of Seashore Paspalum (Paspalum vaginatum) for Novel Breeding Strategies — Patricia E. Novo, Carlos A. Acuña, et al. · Plants (2026) | TGRS Research Map | TGRS